Repositioning forelimb superficialis muscles: tendon attachment and muscle activity enable active relocation of functional myofibers

scientific article (publication date: 16 September 2013)

Repositioning forelimb superficialis muscles: tendon attachment and muscle activity enable active relocation of functional myofibers is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.DEVCEL.2013.08.007
P3181OpenCitations bibliographic resource ID4130776
P932PMC publication ID3805836
P698PubMed publication ID24044893
P5875ResearchGate publication ID256704323

P50authorRonen SchweitzerQ54250660
Alice H HuangQ58415431
P2093author name stringJohn V Brigande
Lingyan Wang
Elazar Zelzer
Timothy J Riordan
Shai Eyal
P2860cites workConnective tissue fibroblasts and Tcf4 regulate myogenesisQ24626148
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Regulation of tendon differentiation by scleraxis distinguishes force-transmitting tendons from muscle-anchoring tendonsQ28508121
DEVELOPMENTAL GENETICS OF A LETHAL MUTATION, MUSCULAR DYSGENESIS (MDG), IN THE MOUSE. II. DEVELOPMENTAL ANALYSISQ28584771
DEVELOPMENTAL GENETICS OF A LETHAL MUTATION, MUSCULAR DYSGENESIS (MDG), IN THE MOUSE. I. GENETIC ANALYSIS AND GROSS MORPHOLOGYQ28585851
A single nucleotide deletion in the skeletal muscle-specific calcium channel transcript of muscular dysgenesis (mdg) miceQ28594476
From fish to modern humans--comparative anatomy, homologies and evolution of the pectoral and forelimb musculatureQ28752329
Directed differentiation of embryonic stem cells into motor neuronsQ29616200
A robust and high-throughput Cre reporting and characterization system for the whole mouse brainQ29616609
Anomalies of the flexor digitorum superficialis muscleQ33794503
Genetic and developmental bases of serial homology in vertebrate limb evolutionQ34081664
Tbx4 and tbx5 acting in connective tissue are required for limb muscle and tendon patterningQ34098479
A Pax3/Pax7-dependent population of skeletal muscle progenitor cellsQ34412889
Skeletal muscle stem and progenitor cells: reconciling genetics and lineageQ36121427
Sonic hedgehog acts cell-autonomously on muscle precursor cells to generate limb muscle diversityQ36240934
Tendon and ligament: development, repair and diseaseQ36269373
Gene transfer to the developing mouse inner ear by in vivo electroporationQ36333109
The differentiation and morphogenesis of craniofacial musclesQ36406734
Pax3:Fkhr interferes with embryonic Pax3 and Pax7 function: implications for alveolar rhabdomyosarcoma cell of origin.Q37598845
Connecting muscles to tendons: tendons and musculoskeletal development in flies and vertebratesQ37779168
Genetic regulation of skeletal muscle developmentQ37786674
Origin of vertebrate limb muscle: the role of progenitor and myoblast populationsQ37881289
New, puzzling insights from comparative myological studies on the old and unsolved forelimb/hindlimb enigma.Q38041700
Kinetics and kinematics of the equine hind limb: in vivo tendon loads and force plate measurements in poniesQ39291681
Tendons and muscles of the mouse forelimb during embryonic developmentQ41846792
Generation of transgenic tendon reporters, ScxGFP and ScxAP, using regulatory elements of the scleraxis gene.Q50683910
Cranial neural crest cells regulate head muscle patterning and differentiation during vertebrate embryogenesis.Q51980117
A Tcf4-positive mesodermal population provides a prepattern for vertebrate limb muscle patterning.Q52096454
Analysis of the tendon cell fate using Scleraxis, a specific marker for tendons and ligaments.Q52128887
Differentiation of avian craniofacial muscles: I. Patterns of early regulatory gene expression and myosin heavy chain synthesis.Q52173568
Normal and aberrant craniofacial myogenesis by grafted trunk somitic and segmental plate mesoderm.Q52965452
The morphogenesis of the thigh of the mouse with special reference to tetrapod muscle homologiesQ66994242
Limb-somite relationship: origin of the limb musculatureQ67043841
Spatial and temporal patterns of muscle cleavage in the chick thigh and their value as criteria for homologyQ68058215
Local extrinsic signals determine muscle and endothelial cell fate and patterning in the vertebrate limbQ78453866
Cellular and molecular investigations into the development of the pectoral girdleQ84529595
P433issue5
P407language of work or nameEnglishQ1860
P1104number of pages8
P304page(s)544-551
P577publication date2013-09-01
P1433published inDevelopmental CellQ1524277
P1476titleRepositioning forelimb superficialis muscles: tendon attachment and muscle activity enable active relocation of functional myofibers
P478volume26

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cites work (P2860)
Q46210214Changing While Staying the Same: Preservation of Structural Continuity During Limb Evolution by Developmental Integration.
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Q57154292Evolution of the muscular system in tetrapod limbs
Q83227151Evolutionary loss of foot muscle during development with characteristics of atrophy and no evidence of cell death
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Q38264162How the pterosaur got its wings
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Q51802509Mechanobiology of limb musculoskeletal development.
Q35418023Mouse forepaw lumbrical muscles are resistant to age-related declines in force production.
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Q30842718Novel Model of Tendon Regeneration Reveals Distinct Cell Mechanisms Underlying Regenerative and Fibrotic Tendon Healing
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Q92798234Tgfβ signaling is critical for maintenance of the tendon cell fate
Q28656154The developmental origin of zygodactyl feet and its possible loss in the evolution of Passeriformes
Q36193304Whole transcriptome expression profiling of mouse limb tendon development by using RNA-seq

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